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纤维素水解的酶动力学:乙醇和纤维二糖的抑制作用

Enzymatic kinetic of cellulose hydrolysis: inhibition by ethanol and cellobiose.

作者信息

Bezerra Rui M F, Dias Albino A

机构信息

CETAV-Departamento de Engenharia Biológica e Ambiental, Universidade de Trás-os-Montes e Alto Douro, Apartado 1013, 5001-911 Vila Real, Portugal.

出版信息

Appl Biochem Biotechnol. 2005 Jul;126(1):49-59. doi: 10.1007/s12010-005-0005-5.

Abstract

The ethanol effect on the Trichoderma reesei cellulases was studied to quantify and clarify this inhibition type. To determine inhibition parameters of crude cellulase and purified exoglucanase Cel7A, integrated Michaelis-Menten equations were used assuming the presence of two inhibitors: cellobiose as the reaction product and ethanol as a possible bioproduct of cellulose fermentation. It was found that hydrolysis of cellulose by crude enzyme follows a model that considers noncompetitive inhibition by ethanol, whereas Cel7A is very slightly competitively inhibited. Crude cellulase is much more inhibited (K(iul) = K(icl) = 151.9 mM) than exoglucanase Cel7A (K(icl) = 1.6 x 1015 mM). Also, calculated inhibition constants showed that cellobiose inhibition is more potent than ethanol inhibition both for the crude enzyme as well as exoglucanase Cel7A.

摘要

研究了乙醇对里氏木霉纤维素酶的影响,以量化并阐明这种抑制类型。为了确定粗纤维素酶和纯化的外切葡聚糖酶Cel7A的抑制参数,使用了整合的米氏方程,假定存在两种抑制剂:作为反应产物的纤维二糖和作为纤维素发酵可能生物产物的乙醇。结果发现,粗酶对纤维素的水解遵循一种考虑乙醇非竞争性抑制的模型,而Cel7A受到的竞争性抑制非常轻微。粗纤维素酶(K(iul) = K(icl) = 151.9 mM)比外切葡聚糖酶Cel7A(K(icl) = 1.6 x 1015 mM)受到的抑制要强得多。此外,计算得到的抑制常数表明,无论是粗酶还是外切葡聚糖酶Cel7A,纤维二糖的抑制作用都比乙醇的抑制作用更强。

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